Preview

Vavilov Journal of Genetics and Breeding

Advanced search

The diversity of spring hexaploid triticales, differing on the time of the onset of developmental phases under conditions of near Ob region of Western Siberia

https://doi.org/10.18699/VJ16.129

Abstract

The time of the onset of developmental phases of 78 spring hexaploid triticale samples from the world collection of N.I. Vavilov Institute of Plant Industry is studied under natural conditions, in two replicates with a 18-day interval between two dates of sowing. The number of days from the date of sowing up to the date of heading of triticale samples at the I term sowing was from 31 to 49, and at the II term sowing, from 30 to 52. Samples from Argentina, Portugal, Eastern Europe, Poland, Belarus, and Ukraine headed within the interval of mean values (34–40 days). Triticale M2A/Cin from Ethiopia was relatively early ripening. Late ripening were the samples from Zambia, Brazil, North America. Among triticales from Mexico, Dagestan and Russia both early and late ripening forms occurred. Most samples (82 %) at the II term sowing headed 1–9 days earlier than at the I term sowing, which was probably due to a shortening of the period «shoots– the first node» by 1–7 days in 87 % of samples. After lengthening this period, in the triticales studied in the present work, as in wheat, the length of vegetation period increased. The length of the interphase period «heading– ripening» in these samples increased, while in wheat some authors noticed its shortening. Hexaploid triticale samples studied had different times of the onset of developmental phases and response to different terms of sowing, which means their possible use in regions with different daylength.

About the Authors

M. V. Emtseva
Siberian Research Institute of Plant Production and Breeding – Branch of the Institute of Cytology and Genetics SB RAS
Russian Federation
Krasnoobsk, Novosibirsk region


P. I. Stepochkin
Siberian Research Institute of Plant Production and Breeding – Branch of the Institute of Cytology and Genetics SB RAS
Russian Federation
Krasnoobsk, Novosibirsk region


References

1. Alferova P.A., Nagirnyak I.N. Seed productivity of spring triticale in Eastern Transbaikalia. Sibirskiy Vestnik Selskokhozyaystvennoy Nauki = Siberian Herald of Agricultural Sciences. 2012;6:17-19.

2. Batygina T.B. Embriologiya pshenitsy [Wheat Embryology]. Leningrad, Kolos, 1974.

3. Breslavets L.P. Poliploidiya v prirode i opyte [Polyploidy in the Nature and in Experiment]. Moscow, 1963.

4. Dospekhov B.A. Metodika polevogo opyta (s osnovami statisticheskoy obrabotki rezultatov issledovaniy) [Technique of the Field Experiment (with Fundamentals of the Statistical Processing of Results)]. Moscow, Agropromisdat, 1985.

5. Emtseva M.V., Stepochkin P.I. The time of the onset of developmental phases in octoploid triticales with dominant genes Vrn-A1–Vrn-D4 and in spontaneous spring mutants of hexaploid triticales. Materialy Mezhdunarodnoy nauchno-prakticheskoy konferentsii molodykh uchenykh, aspirantov i studentov «Energo- i resursoeffektivnye tekhnologii proizvodstva i khranenie selskokhozyaystvennoy produktsii» [Proc. of the Int. Scientific and Practical Conference of Young Scientists, Postgraduate Students and Students «Energy and resource-saving technologies of the production and storage of agricultural products»]. Kharkov, 2014.

6. Fedorova T.N. Embryogenesis in wheat-rye amphidiploids. Sbornik trudov aspirantov i molodykh nauchnykh sotrudnikov VIR [Proc. of Postgraduate Students and Young Researchers of the Vavilov Research Institute of Plant Industry]. 1964;4(8):137-142.

7. Fedorova T.N. Problems of plant breeding and cytogenetics of triticale. Selskokhozyaystvennaya Biologiya = Agricultural Biology. 1983;10:95-101.

8. Halloran G.M., Pennell A.L. Duration and rate of developmental phases in wheat in two environments. Ann. Bot. 1982;49(1):115-121.

9. Kaminskaya L.N., Koren L.V., Leonova I.N., Adonina I.G., Khotylеva L.V., Salina E.A. Development of triticale lines tagged with Vrn genes and their molecular-genetic study. Informatsionnyy Vestnik VOGiS = The Herald of Vavilov Society for Geneticists and Breeders. 2005;9(4):481-489.

10. Kociuba W. Assessment of agriculturally important features of winter and spring triticale collections (× Triticosecale Wittmack). Hereditas. 1992;116:323-328. DOI 10.1111/j.1601-5223.1992.tb00163.x

11. Kociuba W., Kramek A. Variability of yield traits and disease resistance in winter triticale genetic resources accessions. Acta Agrobotanica. 2014;67(2): 67-76. DOI 10.5586/aa.2014.027

12. Košner J., Pánková K. Chromosome substitutions with dominant loci Vrn-1 and their effect on developmental stages of wheat. Czech J. Genet. Plant Breed. 2004;40(2):37-44.

13. Kuperman F.M., Rzhanova E.I., Murashov V.V., L’vova I.N., Sedova E.A., Ahundova V.A., Shcherbina I.P. Biologiya razvitiya kulturnykh rasteniy [Biology of the Development of Cultivated Plants]. Moscow, Vysshaya shkola, 1982.

14. Kurkiev U.K. Tritikale i problemy ego selektsii [Triticale and Problems of Its Breeding]. Leningrad, 1975.

15. Lamadji S., Fautrie A.G., McNeil D.L., Sedcole J.R. Proposed breeding strategy for yield improvement of hexaploid triticale (× Triticosecale Wittmack) 1. Genetic variability and phenotypic stability. New Zealand J. Crop Horticult. Sci. 1995;23:1-11. DOI 10.1080/ 01140671.1995.9513862

16. Mahalin M.A. Mezhrodovaya gibridizatsiya zernovykh kolosovykh kultur [Intergeneric Hybridization of Grain Spike Cultures]. Moscow, Nauka, 1992.

17. Müntzing A. Über die Entstehungsweise 56-chromosoniger Weizen-Roggen-Bastarde. Der Züchter. 1936;8:188-191.

18. Oehler E. Untersuchungen über ansatzverhältnisse, morphologie und fertilität bei weizen-roggenbasterden. Z. f. Phlanzenzüchtung. 1931; 16:357-393.

19. Petr J., Hradecká D.H. Peculiarities of the growth and development of triticale in comparison with wheat and rye. Czech. J. Genet. Plant Breed. Proc. 5th Intern. Triticeae Symp., Prague, June 6–10, 2005:41. (Special issue.)

20. Priadcencu A.L., Miclea C.L., Catelly-Moisescu L. Hibridul grâu-secarà. 1. Hibridarea simplà. Probl. Genet. Teor. Aplic. 1970;2(6):423-467.

21. Rastenievodstvo [Plant growing]. Ed. V.A. Alabushev. Rostov-on-Don, «MarT» Publ., 2001.

22. Rigin B.V., Orlova N.I. Pshenichno-rzhanye amfidiploidy [Wheat-Rye Amphidiploids]. Leningrad, Kolos, 1977.

23. Rosenstiel K., Mittelstenscheid L. Über die Erzeugung amphidiploider Roggen- Weizen-Bastarde (Secalotricum). Der Züchter. 1943;15(10-12):173-183.

24. Sechnyak L.K., Sulima Yu.G. Tritikale [Triticale]. Moscow, Kolos, 1984.

25. Shulyndin A.F. Tritikale – novaya zernovaya i kormovaya kultura [Triticale, a New Grain and Fodder Crop]. Kiev, Urozhai, 1981.

26. Stepochkin P.I. Formoobrazovatelnye protsessy v populyatsiyakh tritikale: [Morphogenetic Processes in Triticale Populations]. Novosibirsk, Siberian Research Institute of Plant Breeding and Selection, 2008.

27. Stepochkin P.I. Development and study of a set of triticale forms for Vrn genes. Sibirskiy Vestnik Selskokhozyaystvennoy Nauki = Siberian Herald of Agricultural Sciences. 2009;11:26-32.

28. Tishchenko V.N., Chekalin N.M., Panchenko I.A., Usova Z.V. Prodolzhitelnost vegetatsionnogo i mezhfaznykh periodov i ikh korrelyatsii s urozhaynostyu v zavisimosti ot usloviy goda i genotipa ozimoy myagkoy pshenitsy [Duration of vegetative and interphase periods and their correlations with productivity depending on conditions of the year and the genotype of winter common wheat]. Available at: http://agromage.com/stat_id.php?id=409.

29. Ukalska J., Kociuba W. Phenotypical diversity of winter triticale genotypes collected in the Polish gene bank between 1982 and 2008 with regard to major quantitative traits. Field Crops Res. 2013;49:203-212. DOI 10.1016/j.fcr.2013.05.010

30. Voronin A.N., Stelmakh A.F. Stages of organogenesis in common wheat lines near- isogenic for Vrn1-3 loci. Nauchno-tekhnicheskiy byulleten Vsesoyuznogo selektsionno- geneticheskogo instituta = Scientific and Technological Bulletin of the All-Union Plant Breeding and Genetics Institute. 1985;1(55):19-23.

31. Zhilkina M.D. The study of the method of rising of wheat-rye amphidiploid productivity by crossing 56-chromosome and 42-chromosome amphidiploids. Nauchnye trudy NIISKh tsentral’nykh rayonov Nechernozemnoy zony. Nemchinovka [Proc. of the Research Institute of Agriculture of central regions of the Non-Black-Earth Zone. Nemchinovka]. 1968;22:30-37.


Review

Views: 693


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2500-3259 (Online)